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肌肉氧气运输与氧气依赖的代谢调控。

Muscle O2 transport and O2 dependent control of metabolism.

作者信息

Wagner P D

机构信息

Department of Medicine, University of California, San Diego, La Jolla 92093-0623.

出版信息

Med Sci Sports Exerc. 1995 Jan;27(1):47-53.

PMID:7898337
Abstract

Whether maximal oxygen uptake (VO2max) during exercise in healthy subjects reflects limitation of the supply of oxygen to muscle mitochondria or an inability to use oxygen beyond some biochemical limit remains debated. This paper summarizes evidence for the hypothesis that VO2max is limited by O2 supply. How the many steps in the pathway for oxygen interact to determine maximum oxygen supply is analyzed, resulting in a mathematical model of predictive value. A major component of this model is the diffusional transport of oxygen out of the muscle microcirculation. The proportionality between VO2max and the capillary to mitochondrion partial pressure gradient (as FIO2 is altered) supports this hypothesis, but does not exclude the existence of convective heterogeneity of blood flow as a factor contributing to the limitation of VO2max. Although there is no direct method for measuring convective heterogeneity, altering hemoglobin P50 permits distinguishing diffusive from convective elements in limiting VO2max, and both the underlying theory and the results are summarized herein. Our conclusion is that VO2max in health appears limited by the supply of oxygen to the mitochondria, which in turn, depends upon the integrated interaction among all of the diffusive and convective steps in the oxygen pathway between the environment and the mitochondria.

摘要

健康受试者运动期间的最大摄氧量(VO2max)反映的是肌肉线粒体氧气供应受限,还是在某些生化极限之上无法利用氧气,这一问题仍存在争议。本文总结了支持VO2max受氧气供应限制这一假说的证据。分析了氧气通路中的多个步骤如何相互作用以确定最大氧气供应,从而得出一个具有预测价值的数学模型。该模型的一个主要组成部分是氧气从肌肉微循环的扩散运输。VO2max与毛细血管到线粒体的分压梯度之间的比例关系(随着吸入氧分数的改变)支持了这一假说,但并不排除血流的对流异质性作为导致VO2max受限的一个因素的存在。虽然没有直接测量对流异质性的方法,但改变血红蛋白P50可以区分限制VO2max时的扩散和对流因素,本文将对相关基础理论和结果进行总结。我们的结论是,健康状态下的VO2max似乎受线粒体氧气供应的限制,而这又取决于环境与线粒体之间氧气通路中所有扩散和对流步骤的综合相互作用。

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